ENTRYWAY MAT FOR DISINFECTING THE SOLES OF SHOES
An entryway mat with a misting area and a drying area. When a user steps on the misting area, a disinfecting solution is dispensed onto the bottoms of the user's feet. The user then steps onto the drying area to wipe away the disinfecting solution.
Priority is hereby claimed to provisional application Ser. No. 63/086,635, filed Oct. 2, 2020, which is incorporated herein by reference.
BACKGROUNDVarious kinds of door mats and entryway mats have been used over the years to reduce or eliminate dirt, debris, and contaminants from entering an inside location, be it a home, a laboratory, or a cleanroom. For example, disposable entryway mats for clean rooms are a staple commodity. These are disposable items akin to a large tablet of paper. However, each sheet is made from a sticky/tacky material. The mats are used in the conventional fashion: They are placed on the floor in front of the door to a laboratory or clean room in such a fashion that people entering (or leaving) the space must place both feet onto the mat. The sticky coating used actively traps dirt and debris from the bottom of the shoes of those people passing over the mat. When the sheet starts to lose its stickiness (due to adhered debris) it is simply discarded and a new one installed in its place. Such mats are made by many suppliers, such as CleanPro Cleanroom Products (a division of Production Automation Corporation, Minnetonka, Minn.).
Entryway mats that dispense a liquid cleaning/disinfecting solution onto the soles of shoes stepping onto the mat are known. See U.S. Pat. No. 9,402,529, issued Aug. 2, 2016, to Daniel. This device, however, is entirely gravity operated, and thus responds differently when people of differing weight tread upon it. That is, the amount of disinfecting liquid dispensed by the mat is directly proportional to the weight of the person stepping onto the mat. Also, because the mat does not include a separate space to dry the user's shoes, it does not accomplish its intended purpose. Once a user steps off the mat shown in Daniel, the user will track wet footprints throughout the area that is supposed to be kept clean.
SUMMARYDisclosed is a smart and redesigned entryway mat. The mat comprises a housing defining a misting area (14) and a drying area (16), wherein the misting and drying areas are dimensioned and configured to support a human user standing on either area. The misting area includes a plurality of perforations passing through it. A misting cylinder (13) or misting bladder (13′) containing a disinfecting solution at a pressure higher than atmospheric pressure and in fluid connection to one or more spray nozzles (20) is positioned in the housing. The spray nozzles (20) are dimensioned and configured to dispense the disinfecting solution through the perforations (18) in the misting area (14) and to contact the feet or the soles of the shoes of users standing on the misting area (14). The mat also comprises at least one sensor (26) operationally connected to at least one sensor-controlled valve (28), wherein the sensor-controlled valve (28) is operationally positioned between the misting cylinder (13) or misting bladder (13′) and the one or more spray nozzles (20). The sensor is configured to open the sensor-controlled valve (28) when a user steps onto the misting area (14) and to close the sensor-controlled valve when the user steps off the misting area (14).
In certain versions of the entryway mat, the misting cylinder (13) or misting bladder (13′) are refillable or replaceable.
In another version, the entryway mat further comprising a microcontroller (22) operationally connected to the sensor (26) and the sensor-controlled valve (28). The microcontroller (22) is pre-programmed to open the one sensor-controlled valve (28) for a pre-determined amount of time in response to a user stepping onto the misting area (14).
In yet another version of the entryway mat, the misting area (14) comprises a movable upper plate (30) and at least one piston (32) operationally connected to the movable upper plate (30) and the misting bladder (13′). The plate, piston, and bladder are arranged so that a user stepping onto the movable upper place (30) applies pressure to the misting bladder (13′) via action of the piston (32).
In another version, the mat comprises a number of cones (34) corresponding to the number of spray nozzles (20), each cone having a narrow end attached to its corresponding nozzle and a wide end positioned in proximity to the perforations in the misting area. The cones function to direct the disinfecting solution onto the bottoms of the user's feet.
In yet another version, the entryway mat further comprising a microcontroller (22) operationally connected to the sensor (26) and the sensor-controlled valve (28) is also operationally connected to a motion sensor (35). The microcontroller (22) is pre-programmed to provide power to the sensor (26) and the sensor-controlled valve (28) for a predefined period of time when the motion sensor (35) detects motion and to not provide power to the sensor (26) and the sensor-controlled valve (28) when the motion sensor (35) does not detect motion after that predefined period of time has elapsed. The microcontroller (22) will also enter into a power-saving “sleep” mode after that predefined period of time has elapsed.
In another version, the mat comprising a microcontroller (22) operationally connected to a switch (36). The microcontroller (22) is pre-programmed to turn the system on or off when the switch (36) is pressed, opposite the current state. The microcontroller (22) operationally connected to the sensor-controlled valve (28) is able to be pre-programmed such when the switch (36) is pressed for a predefined period of time, the sensor-controlled valve (28) will open for as long as the switch (36) continues to remain pressed.
Referring now to the drawings, the same reference numerals are used throughout the drawings to identify the same or corresponding elements of the disclosed entryway mat.
The drying area 16 may comprise a tablet of multiple sheets of conventional, disposable drying media (for example, paper or cloth sheets). The drying media may be made sticky or tacky with a coating as is known in the art. Or the drying area may comprise a reusable fibrous or cloth material, such as a no-lint fabric that can be removed, washed, and replaced periodically. Similarly, the drying area may also comprise a biodegradable, renewable drying material, such as a jute or bamboo pad.
The misting cylinder 13 is an aerosol-type pressure container of conventional design. The misting cylinder comprises a can or bottle or other pressure vessel that contains the cleaning solution as the “payload” and a propellant under pressure. When the container's valve is opened, the payload is forced out of a series of spray nozzles 20 (see
The sensor 26 and microcontroller 22 are of conventional design. The sensor 26 may, for example be an optical sensor, such as an IR detector or other light beam detector, or a pressure sensor that detects the weight of a user who steps on the misting area. The microcontroller 22 may be in the form of a printed circuit board (PCB). Such microcontrollers are conventional and well known in the art. The sensor 26 and microcontroller 22 are operationally linked to the valve 28 so that when a user steps on the misting area, the valve 28 is opened for a pre-determined amount of time and then closed. The length of time the valve 28 is open determines the amount of cleaning solution that is dispensed from the misting cylinder 13.
Referring now to
Claims
1. An entryway mat comprising:
- a housing defining a misting area (14) and a drying area (16), wherein the misting and drying areas are dimensioned and configured to support a human user standing on either area;
- the misting area (14) defining a plurality of perforations (18) passing through it;
- a misting cylinder (13) or misting bladder (13′) containing a disinfecting solution at a pressure higher than atmospheric pressure and in fluid connection to one or more spray nozzles (20), wherein the spray nozzles (20) are dimensioned and configured to dispense the disinfecting solution through the perforations (18) in the misting area (14) and to contact the feet or the soles of the shoes of users standing on the misting area (14);
- at least one sensor (26) operationally connected to at least one sensor-controlled valve (28), wherein the sensor-controlled valve (28) is operationally positioned between the misting cylinder (13) or misting bladder (13′) and the one or more spray nozzles (20), wherein the sensor is configured to open the sensor-controlled valve (28) when a user steps onto the misting area (14) and to close the sensor-controlled valve when the user steps off the misting area (14).
2. The entryway mat of claim 1, further comprising a microcontroller (22) operationally connected to the sensor (26) and the sensor-controlled valve (28), wherein the microcontroller (22) is pre-programmed to open the one sensor-controlled valve (28) for a pre-determined amount of time in response to a user stepping onto the misting area (14).
3. The entryway mat of claim 1, further comprising a motion sensor (35) operationally connected to the microcontroller (22), wherein the microcontroller is pre-programmed to turn on the sensor (26) and valve (28) when motion is detected and turn off the sensor (26) and valve (28) and enter power-saving mode when motion is not detected after a predefined period of time.
4. The entryway mat of claim 1, further comprising a switch (36) operationally connected to the microcontroller (22), wherein the microcontroller is pre-programmed to turn on and off the system when pressed, opposite the current state, and to open the valve (28) after being pressed for a predefined period of time after which the valve (28) will remain open as long as the switch (36) continues to remain pressed.
5. The entryway mat of claim 1, wherein the misting area (14) comprises a movable upper plate (30) and at least one piston (32) operationally connected to the movable upper plate (30) and the misting bladder (13′) such that a user stepping onto the movable upper place (30) applies pressure to the misting bladder (13′) via action of the piston (32).
6. The entryway mat of claim 1, further comprising a number of cones (34) corresponding to the number of spray nozzles (20), each cone having a narrow end attached to its corresponding nozzle and a wide end positioned in proximity to the perforations in the misting area.
7. The entryway mat of claim 1, wherein the misting cylinder (13) or misting bladder (13′) are refillable or replaceable.
8. The entryway mat of claim 7, further comprising a microcontroller (22) operationally connected to the sensor (26) and the sensor-controlled valve (28), wherein the microcontroller (22) is pre-programmed to open the one sensor-controlled valve (28) for a pre-determined amount of time in response to a user stepping onto the misting area (14).
9. The entryway mat of claim 7, wherein the misting area (14) comprises a movable upper plate (30) and at least one piston (32) operationally connected to the movable upper plate (30) and the misting bladder (13′) such that a user stepping onto the movable upper place (30) applies pressure to the misting bladder (13′) via action of the piston (32).
10. The entryway mat of claim 7, further comprising a number of cones (34) corresponding to the number of spray nozzles (20), each cone having a narrow end attached to its corresponding nozzle and a wide end positioned in proximity to the perforations in the misting area.
11. The entryway mat of claim 7, further comprising a motion sensor (35) operationally connected to the microcontroller (22), wherein the microcontroller is pre-programmed to turn on the sensor (26) and valve (28) when motion is detected and turn off the sensor (26) and valve (28) and enter power-saving mode when motion is not detected after a predefined period of time.
12. The entryway mat of claim 7, further comprising a switch (36) operationally connected to the microcontroller (22), wherein the microcontroller is pre-programmed to turn on and off the system when pressed, opposite the current state, and to open the valve (28) after being pressed for a predefined period of time after which the valve (28) will remain open as long as the switch (36) continues to remain pressed.
13. An entryway mat comprising:
- a housing defining a misting area (14) and a drying area (16), wherein the misting and drying areas are dimensioned and configured to support a human user standing on either area;
- the misting area (14) defining a plurality of perforations (18) passing through it;
- a misting cylinder (13) or misting bladder (13′) containing a disinfecting solution at a pressure higher than atmospheric pressure and in fluid connection to one or more spray nozzles (20), wherein the spray nozzles (20) are dimensioned and configured to dispense the disinfecting solution through the perforations (18) in the misting area (14) and to contact the feet or the soles of the shoes of users standing on the misting area (14)
- at least one sensor (26) operationally connected to at least one sensor-controlled valve (28), wherein the sensor-controlled valve (28) is operationally positioned between the misting cylinder (13) or misting bladder (13′) and the one or more spray nozzles (20), wherein the sensor is configured to open the sensor-controlled valve (28) when a user steps onto the misting area (14) and to close the sensor-controlled valve when the user steps off the misting area (14);
- wherein the misting area (14) comprises a movable upper plate (30) and at least one piston (32) operationally connected to the movable upper plate (30) and the misting bladder (13′) such that a user stepping onto the movable upper place (30) applies pressure to the misting bladder (13′) via action of the piston (32).
14. The entryway mat of claim 13, further comprising a number of cones (34) corresponding to the number of spray nozzles (20), each cone having a narrow end attached to its corresponding nozzle and a wide end positioned in proximity to the perforations in the misting area.
15. The entryway mat of claim 13, wherein the misting cylinder (13) or misting bladder (13′) are refillable or replaceable.
16. The entryway mat of claim 13, further comprising a microcontroller (22) operationally connected to the sensor (26) and the sensor-controlled valve (28), wherein the microcontroller (22) is pre-programmed to open the one sensor-controlled valve (28) for a pre-determined amount of time in response to a user stepping onto the misting area (14).
17. The entryway mat of claim 13, wherein the misting area (14) comprises a movable upper plate (30) and at least one piston (32) operationally connected to the movable upper plate (30) and the misting bladder (13′) such that a user stepping onto the movable upper place (30) applies pressure to the misting bladder (13′) via action of the piston (32).
18. The entryway mat of claim 13, further comprising a number of cones (34) corresponding to the number of spray nozzles (20), each cone having a narrow end attached to its corresponding nozzle and a wide end positioned in proximity to the perforations in the misting area.
19. The entryway mat of claim 13, further comprising a motion sensor (35) operationally connected to the microcontroller (22), wherein the microcontroller is pre-programmed to turn on the sensor (26) and valve (28) when motion is detected and turn off the sensor (26) and valve (28) and enter power-saving mode when motion is not detected after a predefined period of time.
20. The entryway mat of claim 13, further comprising a switch (36) operationally connected to the microcontroller (22), wherein the microcontroller is pre-programmed to turn on and off the system when pressed, opposite the current state, and to open the valve (28) after being pressed for a predefined period of time after which the valve (28) will remain open as long as the switch (36) continues to remain pressed.
21. An entryway mat comprising:
- a housing defining a misting area (14) and a drying area (16), wherein the misting and drying areas are dimensioned and configured to support a human user standing on either area;
- the misting area (14) defining a plurality of perforations (18) passing through it;
- a misting cylinder (13) or misting bladder (13′) containing a disinfecting solution at a pressure higher than atmospheric pressure and in fluid connection to one or more spray nozzles (20), wherein the spray nozzles (20) are dimensioned and configured to dispense the disinfecting solution through the perforations (18) in the misting area (14) and to contact the feet or the soles of the shoes of users standing on the misting area (14);
- at least one sensor (26) operationally connected to at least one sensor-controlled valve (28), wherein the sensor-controlled valve (28) is operationally positioned between the misting cylinder (13) or misting bladder (13′) and the one or more spray nozzles (20), wherein the sensor is configured to open the sensor-controlled valve (28) when a user steps onto the misting area (14) and to close the sensor-controlled valve when the user steps off the misting area (14);
- a microcontroller (22) operationally connected to the sensor (26) and the sensor-controlled valve (28), wherein the microcontroller (22) is pre-programmed to open the one sensor-controlled valve (28) for a pre-determined amount of time in response to a user stepping onto the misting area (14);
- wherein the misting area (14) comprises a movable upper plate (30) and at least one piston (32) operationally connected to the movable upper plate (30) and the misting bladder (13′) such that a user stepping onto the movable upper place (30) applies pressure to the misting bladder (13′) via action of the piston (32); and
- further comprising a number of cones (34) corresponding to the number of spray nozzles (20), each cone having a narrow end attached to its corresponding nozzle and a wide end positioned in proximity to the perforations in the misting area.
Type: Application
Filed: Oct 1, 2021
Publication Date: Apr 7, 2022
Patent Grant number: 12121197
Inventors: Abhishek Tandon (Dallas, TX), Kanak Subramanian (Dallas, TX)
Application Number: 17/491,921